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首页> 外文期刊>The Astrophysical journal >ON THE LIMITS OF MEASURING THE BULGE AND DISK PROPERTIES OF LOCAL AND HIGH-REDSHIFT MASSIVE GALAXIES
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ON THE LIMITS OF MEASURING THE BULGE AND DISK PROPERTIES OF LOCAL AND HIGH-REDSHIFT MASSIVE GALAXIES

机译:局部和高倍变大质量星系的凸起和圆盘特性的测量极限

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A considerable fraction of the massive quiescent galaxies at z ≈ 2, which are known to be much more compact than galaxies of comparable mass today, appear to have a disk. How well can we measure the bulge and disk properties of these systems? We simulate two-component model galaxies in order to systematically quantify the effects of non-homology in structures and the methods employed. We employ empirical scaling relations to produce realistic-looking local galaxies with a uniform and wide range of bulge-to-total ratios (B/T), and then rescale them to mimic the signal-to-noise ratios and sizes of observed galaxies at z ≈ 2. This provides the most complete set of simulations to date for which we can examine the robustness of two-component decomposition of compact disk galaxies at different B/T. We confirm that the size of these massive, compact galaxies can be measured robustly using a single Sérsic fit. We can measure B/T accurately without imposing any constraints on the light profile shape of the bulge, but, due to the small angular sizes of bulges at high redshift, their detailed properties can only be recovered for galaxies with B/T 0.2. The disk component, by contrast, can be measured with little difficulty.
机译:在z≈2的大量静止星系中,有相当一部分比现在质量相当的星系更为紧凑,它们似乎具有圆盘。我们如何衡量这些系统的凸起和磁盘属性?我们模拟两部分模型星系,以便系统地量化结构和方法中非同源性的影响。我们使用经验比例关系来产生看起来真实逼真的局部星系,它们的凸出/总比(B / T)均匀且范围很广,然后重新缩放它们以模拟信噪比和观测星系的大小。 z≈2。这提供了迄今为止最完整的一组模拟,在此我们可以检查在不同B / T情况下紧致星系的双组分分解的鲁棒性。我们确认可以使用一次Sérsic拟合对这些庞大而紧凑的星系的大小进行稳健的测量。我们可以精确地测量B / T,而对凸起的光轮廓形状没有任何限制,但是,由于在高红移条件下凸起的角度大小较小,因此它们的详细属性仅适用于B / T 0.2的星系。相比之下,磁盘组件的测量几乎没有困难。

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